A drive shaft connection assembly includes a first coupler having a top end and a bottom end. The top end has an upper well for releasably engaging a drive shaft. A second coupler has an upper end and a lower end. A post is attached to and extends upwardly from the upper end. An auger connector is attached to and extends downwardly from the lower end. The bottom end has a lower well extending upwardly therein to removably receive the post. The post is rotatable with respect to the first coupler to selectively engage or disengage the first coupler. A sleeve is slidably mounted on the perimeter wall and is removably slidable over the first and second couplers prevent their movement with respect to each other.
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1. A drive shaft connection assembly for an auger connection post, said assembly including:
a first coupler having a top end, a bottom end and a perimeter wall being attached to and extending between said top and bottom ends;
said top end having an upper well therein configured for receiving and releasably engaging a drive shaft;
a second coupler having an upper end, a lower end and a peripheral wall extending between said upper and lower ends, a post being attached to and extending upwardly from said upper end;
an auger connector being attached to and extending downwardly from said lower end;
said bottom end having a lower well extending upwardly therein to removably receive said post, said post being rotatable with respect to said first coupler to selectively engage or disengage said first coupler;
a sleeve being slidably mounted on said perimeter wall, said sleeve being removably slidable over said peripheral wall such that said sleeve engages each of said first and second couplers to prevent said first coupler from rotating with respect to said second coupler, wherein said sleeve is disengageable from said second coupler to allow rotation of said post with respect to said first coupler to release said post from said lower well; and
wherein said post has a notch therein extending around a periphery of said post, a disc being defined between said notch and a terminal end of said post, said disc having a cut out therein such that an outer surface of said disc parallel to a longitudinal axis of said post includes an arcuate section and a planar section to facilitate passage of a pin from said notch to an area beyond said terminal end, a second pin receiver extending through said lower well and through said perimeter wall, a lower pin being positioned in said second pin receiver, said post being rotatable to engage or disengage from said lower pin.
3. A drive shaft connection assembly for an auger connection post, said assembly including:
a first coupler having a top end, a bottom end and a perimeter wall having a polygonal outer surface being attached to and extending between said top and bottom ends;
said top end having an upper well therein configured for receiving and releasably engaging a drive shaft, said first coupler having a first pin receiver therein extending through said upper well and said perimeter wall, said first pin receiver being configured to receive an upper pin extendable through said drive shaft;
a second coupler having an upper end, a lower end and a peripheral wall extending between said upper and lower ends, a post being attached to and extending upwardly from said upper end, said post having a notch therein extending around a periphery of said post, a disc being defined between said notch and a terminal end of said post, said disc having a cut out therein such that an outer surface of said disc parallel to a longitudinal axis of said post includes an arcuate section and a planar section to facilitate passage of a pin around said notch to an area beyond said terminal end;
an auger connector being attached to and extending downwardly from said lower end;
said bottom end having a lower well extending upwardly therein to removably receive said post, a second pin receiver extending through said lower well and through said perimeter wall, a lower pin being positioned in said second pin receiver, said post being rotatable to engage or disengage from said lower pin; and
a sleeve being slidably mounted on said perimeter wall, said sleeve being removably slidable over said peripheral wall such that said sleeve engages each of said first and second couplers to prevent said first coupler from rotating with respect to said second coupler, wherein said sleeve is disengageable from said second coupler to allow rotation of said post with respect to said first coupler to release said post from said lower well.
2. The drive shaft connection assembly according to
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The disclosure relates to drive shaft connection devices and more particularly pertains to a new drive shaft connection device for allowing quick disconnections between an auger motor and an auger blade.
An embodiment of the disclosure meets the needs presented above by generally comprising a first coupler having a top end, a bottom end and a perimeter wall attached to and extending between the top and bottom ends. The top end has an upper well for receiving and releasably engaging a drive shaft. A second coupler has an upper end, a lower end and a peripheral wall extending between the upper and lower ends. A post is attached to and extends upwardly from the upper end. An auger connector is attached to and extends downwardly from the lower end. The bottom end has a lower well extending upwardly therein to removably receive the post. The post is rotatable with respect to the first coupler to selectively engage or disengage the first coupler. A sleeve is slidably mounted on the perimeter wall and is removably slidable over the peripheral wall such that the sleeve engages each of the first and second couplers to prevent the first coupler from rotating with respect to the second coupler. The sleeve is disengageable from the second coupler to allow rotation of the post with respect to the first coupler to release the post from the lower well.
There has thus been outlined, rather broadly, the more important features of the disclosure in order that the detailed description thereof that follows may be better understood, and in order that the present contribution to the art may be better appreciated. There are additional features of the disclosure that will be described hereinafter and which will form the subject matter of the claims appended hereto.
The objects of the disclosure, along with the various features of novelty which characterize the disclosure, are pointed out with particularity in the claims annexed to and forming a part of this disclosure.
The disclosure will be better understood and objects other than those set forth above will become apparent when consideration is given to the following detailed description thereof. Such description makes reference to the annexed drawings wherein:
With reference now to the drawings, and in particular to
As best illustrated in
A second coupler 28 has an upper end 30, a lower end 32 and a peripheral wall 34 extending between the upper 30 and lower 32 ends. A post 36 is attached to and extends upwardly from the upper end 30. The post 36 has a notch 38 therein extending around a periphery of the post 36. A disc 39 is defined between the notch 38 and a terminal end 40 of the post 36. The disc 39 has a cut out 42 therein to facilitate passage of a pin, described below as lower pin 44, from the notch 38 and around the disc 39 to an area beyond the terminal end 40. As can be seen in the Figures and in particular
An auger connector 50 is attached to and extends downwardly from the lower end 16. As can be seen in the Figures, the auger connector 50 may have the same structure as an end section of the drive shaft 22 to engage the auger blade in a conventional, laborious manner.
A sleeve 52 is slidably mounted on the perimeter wall 18 and is removably slidable over the peripheral wall 34 such that the sleeve 52 engages, simultaneously each of the first 12 and second 28 couplers to prevent the first coupler 12 from rotating with respect to the second coupler 28. The first 12 and second 28 couplers thus have non-circular shapes and may in particular have rectangular or square cross-sections. The sleeve 52 is disengageable from the second coupler 28 to allow rotation of the post 36 with respect to the first coupler 12 to release the post 26 from the lower well 46. A stop 54 is positioned on the second coupler 28 between the upper 30 and lower 32 ends and prevents the sleeve 52 from sliding down of off the second coupler 28.
In use, the assembly 10 is used to couple together an auger blade, or bit, and a drive shaft 22 from a motor in such a manner that allows a quick disconnect between the two when the auger blade must be removed for storage, shipment or replacement. The assembly 10 is retrofittable to existing devices as its structure allows for engagement with conventional auger structures.
With respect to the above description then, it is to be realized that the optimum dimensional relationships for the parts of an embodiment enabled by the disclosure, to include variations in size, materials, shape, form, function and manner of operation, assembly and use, are deemed readily apparent and obvious to one skilled in the art, and all equivalent relationships to those illustrated in the drawings and described in the specification are intended to be encompassed by an embodiment of the disclosure.
Therefore, the foregoing is considered as illustrative only of the principles of the disclosure. Further, since numerous modifications and changes will readily occur to those skilled in the art, it is not desired to limit the disclosure to the exact construction and operation shown and described, and accordingly, all suitable modifications and equivalents may be resorted to, falling within the scope of the disclosure. In this patent document, the word “comprising” is used in its non-limiting sense to mean that items following the word are included, but items not specifically mentioned are not excluded. A reference to an element by the indefinite article “a” does not exclude the possibility that more than one of the element is present, unless the context clearly requires that there be only one of the elements.
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